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Micro-scale thermal response modeling of an Avcoat-like TPS

机译:类似于Avcoat的TPS的微型热响应建模

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The present work describes the efforts to model a complex microstructure of an Avcoat-like material using direct simulation Monte Carlo (DSMC) method with correct boundary conditions, where a cross flow of boundary layer and pyrolysis species through the material can be simulated. To aid in choosing the gas pressures at the boundary, the development and verification of a continuum scale, finite volume solver is presented that models the gas phase in conjunction with the solid phase. To understand the thermal response of the microstructure, a hybrid random walk model is described, which has a capability to include convection, conduction, and radiation. With the help of these tools, the relative importance of heat transfer mechanisms is analyzed on a micron scale morphology. Using DSMC, the continuum permeability of 15.7×10~(-12) m~2 is obtained for our microstructure model with 0.71 porosity. Furthermore, the flow through the microstructure during the process of pyrolysis is analyzed and the detailed collision statistics are reported as a function of depth. An estimate of collision statistics along an assumed trajectory is given to show the relative importance of gas-gas and gas-surface collisions. In addition, a way to scale the DSMC results on a small scale sample to larger depths is described. Finally, molecular dynamics (MD) simulations based on reactive-force-field (ReaxFF) potential are performed to elucidate the pyrolysis kinetics of a highly crosslinked phenolic formaldehyde resin.
机译:本工作描述了使用具有正确边界条件的直接模拟蒙特卡洛(DSMC)方法对Avcoat类材料的复杂微观结构进行建模的工作,其中可以模拟边界层和热解物种穿过材料的交叉流动。为了帮助选择边界处的气体压力,开发并验证了一个连续标度,使用有限体积求解器对气相和固相进行建模。为了理解微结构的热响应,描述了一种混合随机游走模型,该模型具有对流,传导和辐射的能力。借助这些工具,可以以微米级的形态分析传热机制的相对重要性。使用DSMC,我们的微结构模型具有0.71的孔隙率,连续渗透率为15.7×10〜(-12)m〜2。此外,分析了在热解过程中通过微结构的流动,并报告了详细的碰撞统计数据作为深度的函数。沿假定的轨迹对碰撞统计数据进行了估计,以显示气体与气体和气体表面碰撞的相对重要性。另外,描述了一种将小规模样本上的DSMC结果缩放到更大深度的方法。最后,进行基于反应力场(ReaxFF)势的分子动力学(MD)模拟,以阐明高度交联的酚醛树脂的热解动力学。

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